Journal of Radio Electronics. eISSN 1684-1719. 2025. №6
Full text in Russian (pdf)
DOI: https://doi.org/10.30898/1684-1719.2025.6.8
DEVELOPMENT OF A MICROSTRIP ANTENNA ARRAY
FOR WIRELESS BROADBAND ACCESS MEANS
BASED ON DOMESTIC ELEMENT BASE
P.O. Panchenko, A.A. Shmakov, I.S. Skvarnik,
L.G. Statsenko, V.A. Seleznev
Far Eastern Federal University
690922, Russia, Primorsky Krai, Vladivostok, Russky Island, Ayaks settlement, 10
The paper was received November 12, 2024.
Abstract. The use of local element and production base, in the process of research, was one of the priority tasks in the creation of new devices of transceiver and transmitting equipment. Modern wireless communications require antennas with high gain, wide bandwidth and minimum size to ensure high performance in a wide frequency range. The design of microstrip antennas meets these requirements. The paper presents the design results including substrate material selection, geometric parameters of antenna elements and methods to improve antenna performance. A comparative analysis of numerical simulation results has been carried out. Particular attention is paid to the practical aspects of design and testing, which will allow the use of the developed recommendations for the development of high-performance microstrip antenna systems in communication, radar and wireless networks. For the design and modeling of antennas the software CST studio was used, which allows to construct models of any complexity before creating their full-scale prototypes, which allows to achieve the greatest efficiency in the development and research of advanced antenna systems.
Key words: patch antenna, antenna array, modeling, microstrip antenna, radiator, radiation pattern, gain.
Financing: This work was carried out within the framework of the state assignment of the Ministry of Education and Science of Russia in the field of scientific activity under project No. FZNS-2023-0008.
Corresponding author: Panchenko Pavel Olegovich panchenko.po@students.dvfu.ru
Reference
1. Bernhard J. T. et al. A commemoration of Deschamps’ and Sichak’s ‘Microstrip microwave antennas’: 50 years of development, divergence, and new directions //Proc. of the 2003 Antenna Applications Symp. – 2003. – С. 189-230. https://www.researchgate.net/publication/235117312
2. Munson R. Microstrip phased array antennas //1973 EIC 11th Electrical Insulation Conference. – IEEE, 1973. – С. 281- https://doi.org/10.1109/EIC.1973.7468714
3. Mehta A. Microstrip antenna //International Journal of Scientific & Technology Research. – 2015. – Т. 4. – №. 3. – С. 54-57. https://www.researchgate.net/publication/276165361
4. Саломатов Ю. и др. Устройства сверхвысоких частот и антенны. – Litres, 2022. [Salomatov Yu. et al. Ultra-high frequency devices and antennas. – Litres, 2022.]
5. Mishra R. An overview of microstrip antenna //HCTL Open International Journal of Technology Innovations and Research (IJTIR). – 2016. – Т. 21. – №. 2. – С. 39-55. https://doi.org/10.5281/zenodo.161524
6. Rana M. S. et al. Microstrip patch antennas for various applications: a review //Indonesian journal of Electrical Engineering and computer science. – 2023. – Т. 29. – №. 3. – С. 1511-1519. https://doi.org/10.11591/ijeecs.v29.i3.pp1511-1519
7. Tiwari R., Sharma R., Dubey R. Microstrip patch antenna array design anaylsis for 5G communication applications //Smart Moves Journal Ijoscience. – 2020. – Т. 6. – №. 5. – С. 1-5.
8. Werfelli H. et al. Design of rectangular microstrip patch antenna //2016 2nd International Conference on Advanced Technologies for Signal and Image Processing (ATSIP). – IEEE, 2016. – С. 798-803. https://doi.org/10.1109/ATSIP.2016.7523197
9. Pareit D. et al. The history of WiMAX: A complete survey of the evolution in certification and standardization for IEEE 802.16 and WiMAX //IEEE Communications Surveys & Tutorials. – 2011. – Т. 14. – №. 4. – С. 1183-1211.
10. Гупта К., Гардж Р., Чадха Р. Машинное проектирование СВЧ устройств. – 1987. [Gupta K., Garg R., Chadha R. Machine design of microwave devices. – 1987.]
11. Akinola S., Hashimu I., Singh G. Gain and bandwidth enhancement techniques of microstrip antenna: a technical review //2019 International Conference on Computational Intelligence and Knowledge Economy (ICCIKE). – IEEE, 2019. – С. 175-180. https://doi.org/10.1109/ICCIKE47802.2019.9004278
12. Mishra R. et al. Design and analysis of microstrip patch antenna for wireless communication //International Journal of Innovative Technology and Exploring Engineering. – 2019. – Т. 8. – №. 7. – С. 663-666. https://www.researchgate.net/publication/333043997
For citation:
Panchenko P.O., Shmakov A.A., Skvarnik I.S., Statsenko L.G., Seleznev V.A. Development of a microstrip antenna array for wireless broadband access means based on domestic element base. // Journal of Radio Electronics. – 2025. – №6. https://doi.org/10.30898/1684-1719.2025.6.8 (In Russian)